首页> 外文OA文献 >DEGENERATE FOUR WAVE MIXING IN THIN FILM OPTICAL WAVEGUIDES (NONLINEAR OPTICS, INTEGRATED, PHASE CONJUGATION, SIGNAL PROCESSING).
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DEGENERATE FOUR WAVE MIXING IN THIN FILM OPTICAL WAVEGUIDES (NONLINEAR OPTICS, INTEGRATED, PHASE CONJUGATION, SIGNAL PROCESSING).

机译:在薄膜光学波导中退化的四波混合(非线性光学,集成,相位共轭,信号处理)。

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摘要

The incentive for conducting Degenerate Four Wave Mixing (DFWM) within guided wave devices is two-fold: (1) By coupling the optical beams into guided wave devices, the optical power densities can be increased orders of magnitude due to the tight confinement of the beams. Such an increase in power density means a concomitant increase in conversion efficiency of the signal beam. (2) The potential signal processing applications of DFWM (logic gates, switching, correlation/convolution), particularly for ultra-fast serial processing, would be better exploited, and adjoined to existing integrated circuit technology, by such an integrated optic/guided wave approach. In this dissertation we describe experiments and present data confirming the presence of DFWM within a planar glass thin film with carbon disulphide as the nonlinear cover medium. Optical pulses from a Q-switched, frequency doubled Nd:YAG laser are coupled into the glass film. The nonlinear polarization required to produce the desired conjugate signal is generated within the CS₂ by the evanescent tails of the guided input beams as they probe the nonlinear cover medium. The signals measured agree well with theory, but because they were so small in magnitude, signal-to noise ratios were small due to stray background radiation scattering from beamsplitters and other associated optics. Additionally, recent studies (Jain & Lind, 1983) indicate nonlinear responses in semiconductor (CdS/Se) doped glasses, commercially available as color glass filters, that are orders of magnitude higher than corresponding nonlinearities within CS₂, in addition to possessing subnanosecond response times. We have performed experiments upon such glasses in an effort to fabricate nonlinear optical waveguides within them via ion-exchange techniques. We have successfully fabricated single mode planar guides, but they are currently too lossy to allow demonstration of any guided wave nonlinearities. Also, we describe experiments in which we have measured (bulk) DFWM grating lifetimes with greater precision than previously reported. Results indicate a fast (20 to 50 pico-seconds, depending on the particular glass) electronic response, superimposed upon, but clearly distinguishable from, a slower (10's of nanoseconds) thermal response.
机译:在导波器件内进行简并四波混频(DFWM)的动机有两个方面:(1)通过将光束耦合到导波器件中,由于光波密度的严格限制,光功率密度可以提高几个数量级。梁。功率密度的这种增加意味着信号束的转换效率随之增加。 (2)通过这种集成的光/导波,将更好地利用DFWM的潜在信号处理应用(逻辑门,开关,相关/卷积),尤其是超快速串行处理,并将其与现有的集成电路技术相结合。方法。在本文中,我们描述了实验并提出了数据,证实了以二硫化碳作为非线性覆盖介质的平面玻璃薄膜中DFWM的存在。来自Q开关,倍频Nd:YAG激光器的光脉冲耦合到玻璃膜中。产生所需的共轭信号所需的非线性极化是在CS 2内通过引导输入光束的e逝尾部探测非线性覆盖介质而产生的。测得的信号与理论相吻合,但是由于它们的幅度很小,因此信噪比很小,这是由于来自分束器和其他相关光学器件的杂散背景辐射散射所致。另外,最近的研究(Jain&Lind,1983)指出,半导体(CdS / Se)掺杂玻璃(作为彩色玻璃滤光片可商购)的非线性响应,除了具有亚纳秒的响应时间外,它比CS 2中相应的非线性还高几个数量级。 。我们已经对这种玻璃进行了实验,以试图通过离子交换技术在其中制造非线性光学波导。我们已经成功地制作了单模平面波导,但目前它们的损耗太大,无法演示任何导波非线性。另外,我们描述的实验中,我们测量(批量)DFWM光栅的寿命比以前报道的精度更高。结果表明,快速的(20至50皮秒,取决于特定的玻璃)电子响应叠加在较慢的(10纳秒)热响应之上,但有明显区别。

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    KARAGULEFF CHRIS.;

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  • 年度 1985
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